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首页> 外文期刊>Nature medicine >Major histocompatibility complex genotyping with massively parallel pyrosequencing.
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Major histocompatibility complex genotyping with massively parallel pyrosequencing.

机译:主要组织相容性复杂基因分型与大规模并行焦磷酸测序。

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摘要

Major histocompatibility complex (MHC) genetics dictate adaptive cellular immune responses, making robust MHC genotyping methods essential for studies of infectious disease, vaccine development and transplantation. Nonhuman primates provide essential preclinical models for these areas of biomedical research. Unfortunately, given the unparalleled complexity of macaque MHCs, existing methodologies are inadequate for MHC typing of these key model animals. Here we use pyrosequencing of complementary DNA-PCR amplicons as a general approach to determine comprehensive MHC class I genotypes in nonhuman primates. More than 500 unique MHC class I sequences were resolved by sequence-based typing of rhesus, cynomolgus and pig-tailed macaques, nearly half of which have not been reported previously. The remarkable sensitivity of this approach in macaques demonstrates that pyrosequencing is viable for ultra-high-throughput MHC genotyping of primates, including humans.
机译:主要的组织相容性复合体(MHC)遗传学决定了适应性细胞免疫反应,这使得强大的MHC基因分型方法对于研究传染病,疫苗开发和移植至关重要。非人类的灵长类动物为这些生物医学研究领域提供了必要的临床前模型。不幸的是,由于猕猴MHC具有无与伦比的复杂性,因此现有方法不足以对这些关键模型动物进行MHC分型。在这里,我们使用互补DNA-PCR扩增子的焦磷酸测序作为确定非人类灵长类动物综合MHC I类基因型的一般方法。通过基于序列的恒河猴,食蟹猴和猪尾猕猴的解析,解析了超过500种独特的MHC I类序列,其中近一半尚未被报道。这种方法在猕猴中的显着敏感性表明,焦磷酸测序对于灵长类动物(包括人类)的超高通量MHC基因分型是可行的。

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